ref [34] · 2509.02798 · notice #8504 · dispute
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Wen, Diverse melting modes and structural collapse of hollow bimetallic core-shell nanoparticles: A perspective from molecular dynamics simulations, Scientific Reports 4 (2014) 7051. doi:10.1038/srep07051. [34] L. Zhang, X. Gao, Z. Zhang, M. Zhang, Y . Cheng, J. Su, A doping lattice of aluminum and copper with accelerated electron transfer process and enhanced reductive degradation performance, Scientific Reports 6 (2016) 31797. doi:10.1038/srep31797. [35] J. D. Honeycutt, H. C. Andersen, Molecular dynamics study of melting and freezing of small lennard-jones clusters, The Journal of Physical Chemistry 91 (1987) 4950-4963. doi:10.1021/j100303a014. [36] H. Okamoto, T. Massalski, et al., Binary alloy phase diagrams, ASM International, Materials Park, OH, USA 12 (1990) 3528-3531. [37] T. B. Massalski, H.
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Wen, Diverse melting modes and structural collapse of hollow bimetallic core-shell nanoparticles: A perspective from molecular dynamics simulations, Scientific Reports 4 (2014) 7051. doi:10.1038/srep07051. [34] L. Zhang, X. Gao, Z. Zhang, M. Zhang, Y . Cheng, J. Su, A doping lattice of aluminum and copper with accelerated electron transfer process and enhanced reductive degradation performance, Scientific Reports 6 (2016) 31797. doi:10.1038/srep31797. [35] J. D. Honeycutt, H. C. Andersen, Molecular dynamics study of melting and freezing of small lennard-jones clusters, The Journal of Physical Chemistry 91 (1987) 4950-4963. doi:10.1021/j100303a014. [36] H. Okamoto, T. Massalski, et al., Binary alloy phase diagrams, ASM International, Materials Park, OH, USA 12 (1990) 3528-3531. [37] T. B. Massalski, H